Turbulent Relaxation to a Force-Free Field-Reversed State
J. P. Dahlburg, DAVID C. MONTGOMERY, Gary D. Doolen, Leaf Turner
Abstract
J. P. Dahlburg, DAVID C. MONTGOMERY, Gary D. Doolen, Leaf Turner
Abstract
The evolution of nonequilibrium initial conditions of an incompressible magnetohydrodynamic $Z$ pinch is described by a three-dimensional, pseudospectral numerical code. Magnetohydrodynamic turbulence develops in the resistive, nonviscous magnetofluid, resulting in the selective decay of the energy relative to the magnetic helicity, at Lundquist numbers of only a few hundred. An interior force-free region grows with time and achieves spontaneous reversal of the toroidal magnetic field at the wall, without the necessity of an external electric field.
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The evolution of nonequilibrium initial conditions of an incompressible magnetohydrodynamic $Z$ pinch is described by a three-dimensional, pseudospectral numerical code. Magnetohydrodynamic turbulence develops in the resistive, nonviscous magnetofluid, resulting in the selective decay of the energy relative to the magnetic helicity, at Lundquist numbers of only a few hundred. An interior force-free region grows with time and achieves spontaneous reversal of the toroidal magnetic field at the wall, without the necessity of an external electric field.
Key concepts: Physics, Magnetohydrodynamic drive, Magnetic field, Magnetohydrodynamic turbulence, Helicity, Magnetohydrodynamics, Turbulence, Toroid